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on their thermophysical properties and compatibility with heat transfer fluids. Investigate the thermodynamics and interfacial structure-property relationships of materials intended for thermal energy storage to deepen
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | 3 days ago
"Glacier Geophysics" (d/f/m) Background This position is part of the European Research Council (ERC) Starting Grant (project n. 101076793) PHAST: "A physics-based study of Ice Stream Dynamics" led by Prof
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, we are looking for a candidate who has: Experience with qualitative research methods, particularly semi-structured interviews and stakeholder analysis, is required. Familiarity with agri-food systems
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cooperation between scientists in the fields of physics, chemistry, and engineering solid, modern equipment for manufacturing nanoscale magnetic structures opportunity to pursue a postdoctoral qualification
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if required by the project, the structure or the needs of the laboratory. For further information, please contact Prof. Dr. Elisabeth Letellier Your profile PhD in Biological Sciences or a related discipline
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. Recent work includes the discovery and structural characterization of novel dsDNA sensors and the identification of small molecules targeting key innate immune components https://doi.org/10.1016/j.cell
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materials relevant to thermal energy storage, including conducting structural characterizations and studying their thermophysical properties. Proficiency in computational fluid dynamics (CFD) simulation
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the structural-property relationship in polymers through molecular engineering, structural engineering, and advanced characterization across scales. With these insights, we resolve conflicting design principles
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angularly Broad Line Region, at sub parsec scales, and provide model dependent dynamical measures of the SMBH mass. Combined with Reverberation Mapping linear size measures, angular spectro astrometric sizes
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Job Description Job Responsibilities -Conduct molecular dynamic (MD) simulations of the interactions of biological toxins including alpha-toxin, pyocyanin, and pyoverdine with clay natural and modified